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在 Au(111)表面上的极性分子的自组装单分子层:分布偶极子。

Self-assembled monolayers of polar molecules on Au(111) surfaces: distributing the dipoles.

机构信息

Institute of Solid State Physics, Graz University of Technology, Petersgasse 16, A-8010 Graz, Austria.

出版信息

Phys Chem Chem Phys. 2010 May 7;12(17):4291-4. doi: 10.1039/b924238b. Epub 2010 Feb 25.

Abstract

Quantum-mechanical calculations are performed to investigate the interface between Au(111) surfaces and self-assembled monolayers (SAMs) of organic thiols. Dipolar pyrimidine units act as building blocks to systematically tune the molecular dipole moments via the number of repeat units. The resulting work-function modifications and the energetic alignment of the frontier electronic states in the SAM with the Fermi level are analyzed. Compared to SAMs where strong dipole moments are realized only by end-group substitutions on otherwise non-polar molecules, an entirely different evolution with backbone length is found for the present systems, where dipoles are built directly into the backbone. In particular, the achievable work-function modifications depend on peculiarities in the relative alignment of the energy levels in the SAM and in the metal. We thus introduce an additional degree of freedom for tuning surface and interface electronic properties with functional self-assembled monolayers.

摘要

进行量子力学计算以研究金(111)表面和有机硫醇自组装单层(SAM)之间的界面。二吡咯嘧啶单元作为构建块,通过重复单元的数量来系统地调节分子偶极矩。分析由此产生的功函数修饰以及 SAM 中前沿电子态与费米能级的能量对准。与仅通过末端基团取代非极性分子上的强偶极子来实现强偶极子的 SAM 相比,对于本系统,发现了完全不同的与骨架长度有关的演变,其中偶极子直接构建在骨架中。特别是,可实现的功函数修饰取决于 SAM 和金属中能级相对对准的特殊性。因此,我们为使用功能自组装单层来调节表面和界面电子性质引入了一个额外的自由度。

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